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1-乙炔基芘,一种肝脏微粒体中细胞色素P-450依赖性苯并[a]芘羟化酶活性的自杀性抑制剂。

1-Ethynylpyrene, a suicide inhibitor of cytochrome P-450 dependent benzo[a]pyrene hydroxylase activity in liver microsomes.

作者信息

Gan L S, Acebo A L, Alworth W L

出版信息

Biochemistry. 1984 Aug 14;23(17):3827-36. doi: 10.1021/bi00312a006.

Abstract

The preparation of 1-ethynylpyrene (EP) is described. Incubation of EP with liver microsomes in the presence of NADPH yields fluorescent products, but the production of these products ceases after 15 min. Addition of fresh microsomes restores the original rate of EP metabolism. The metabolism of EP is initially more rapid in microsomes from 5,6-benzoflavone- (BF) pretreated rats than in microsomes from phenobarbital- (PB) pretreated rats or from untreated, control animals. EP strongly inhibits the hydroxylation of benzo[a]pyrene (BP) by liver microsomes; after 20 min in the presence of EP, BP metabolism nearly ceases. Addition of fresh microsomes restores the original rate of BP hydroxylation. EP more effectively inhibits the oxidation of BP in liver microsomes from rats pretreated with BF than from rats pretreated with PB or from untreated, control animals. The inhibition of BP hydroxylation activity due to EP is dependent upon NADPH and is apparently irreversible. Kinetic analyses demonstrate that the observed inhibition of BP hydroxylation is due to loss of the enzymatic activity by a process that is first order in EP and that reaches a limiting value at infinite EP concentrations. One such first-order process, with a t 1/2 of 3.5 min and a Ks for EP of 40 microM, is observed in microsomes from BF-pretreated rats. Two such first-order processes, one with t 1/2 of 6.9 min and Ks of 46 microM and one with t 1/2 of 12.7 min and Ks of 33 microM, are observed in microsomes from PB-pretreated rats. It is proposed that a self-catalyzed inhibition (suicide inhibition) of the cytochrome P-450 dependent BP hydroxylation occurs in the presence of EP. Incubation with EP under conditions that result in loss of about 90% of the BP hydroxylase activity in microsomes from BF-pretreated rats and about 66% of the activity in microsomes from PB-pretreated rats causes the loss of only 6 and 12% of the cytochrome P-450, respectively. It is concluded that loss of P-450 content is an insensitive measure of the effect of this inhibitor upon this cytochrome P-450 dependent enzyme activity. The selectivity of the loss of P-450 due to the incubation of the different microsomal preparations with EP is also observed to be different than the selectivity for loss of BP hydroxylase activity. It is proposed that the suicide inhibition of cytochrome P-450 dependent enzymes by alkynes need not involve heme alkylation and a resulting loss of P-450 content.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本文描述了1-乙炔基芘(EP)的制备方法。在NADPH存在的情况下,将EP与肝微粒体一起温育会产生荧光产物,但这些产物的生成在15分钟后停止。添加新鲜的微粒体可恢复EP代谢的原始速率。在来自经5,6-苯并黄酮(BF)预处理的大鼠的微粒体中,EP的代谢最初比在来自经苯巴比妥(PB)预处理的大鼠或未处理的对照动物的微粒体中更快。EP强烈抑制肝微粒体对苯并[a]芘(BP)的羟基化作用;在有EP存在的情况下20分钟后,BP代谢几乎停止。添加新鲜的微粒体可恢复BP羟基化的原始速率。与来自经PB预处理的大鼠或未处理的对照动物相比,EP更有效地抑制来自经BF预处理的大鼠的肝微粒体中BP的氧化。由于EP导致的BP羟基化活性的抑制依赖于NADPH,并且显然是不可逆的。动力学分析表明,观察到的BP羟基化抑制是由于酶活性的丧失,该过程对EP呈一级反应,并且在无限的EP浓度下达到极限值。在来自经BF预处理的大鼠的微粒体中观察到一种这样的一级反应,其半衰期为3.5分钟,EP的Ks为40μM。在来自经PB预处理的大鼠的微粒体中观察到两种这样的一级反应,一种半衰期为6.9分钟,Ks为46μM,另一种半衰期为12.7分钟,Ks为33μM。有人提出,在EP存在的情况下,细胞色素P-450依赖性BP羟基化会发生自催化抑制(自杀抑制)。在导致来自经BF预处理的大鼠的微粒体中约90%的BP羟化酶活性丧失以及来自经PB预处理的大鼠的微粒体中约66%的活性丧失的条件下,与EP一起温育分别仅导致细胞色素P-450丧失6%和12%。得出的结论是,P-450含量的丧失是该抑制剂对这种细胞色素P-450依赖性酶活性影响的不敏感指标。还观察到,由于不同的微粒体制剂与EP一起温育导致的P-450丧失的选择性与BP羟化酶活性丧失的选择性不同。有人提出,炔烃对细胞色素P-450依赖性酶的自杀抑制不一定涉及血红素烷基化以及由此导致的P-450含量的丧失。(摘要截短至400字)

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